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首页> 外文期刊>Theoretical and Applied Genetics >Dissecting the genetic architecture of agronomic traits in multiple segregating populations in rapeseed (Brassica napus L.)
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Dissecting the genetic architecture of agronomic traits in multiple segregating populations in rapeseed (Brassica napus L.)

机译:解剖油菜(甘蓝型油菜)多个分离种群中农艺性状的遗传结构

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摘要

Detection of QTL in multiple segregating populations is of high interest as it includes more alleles than mapping in a single biparental population. In addition, such populations are routinely generated in applied plant breeding programs and can thus be used to identify QTL which are of direct relevance for a marker-assisted improvement of elite germplasm. Multiple-line cross QTL mapping and joint linkage association mapping were used for QTL detection. We empirically compared these two different biometrical approaches with regard to QTL detection for important agronomic traits in nine segregating populations of elite rapeseed lines. The plants were intensively phenotyped in multi-location field trials and genotyped with 253 SNP markers. Both approaches detected several additive QTL for diverse traits, including flowering time, plant height, protein content, oil content, glucosinolate content, and grain yield. In addition, we identified one epistatic QTL for flowering time. Consequently, both approaches appear suited for QTL detection in multiple segregating populations.
机译:在多个隔离人群中检测QTL引起了人们的极大兴趣,因为与在一个双亲人群中作图相比,它包含的等位基因更多。此外,此类种群通常在应用植物育种程序中生成,因此可用于鉴定QTL,这些QTL与标记辅助的优良种质改良直接相关。使用多行交叉QTL映射和联合链接关联映射进行QTL检测。我们从经验上比较了这两种不同的生物统计学方法,以检测9个单独的优良菜籽种群中重要农艺性状的QTL检测。在多地点田间试验中对植物进行强表型分析,并用253个SNP标记进行基因分型。两种方法都针对不同性状检测了几种添加性QTL,包括开花时间,株高,蛋白质含量,油含量,芥子油苷含量和谷物产量。此外,我们确定了一个上位开花时间的QTL。因此,这两种方法似乎都适合在多个种族中进行QTL检测。

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  • 来源
    《Theoretical and Applied Genetics》 |2012年第1期|153-161|共9页
  • 作者单位

    State Plant Breeding Institute University of Hohenheim 70599 Stuttgart Germany;

    State Plant Breeding Institute University of Hohenheim 70599 Stuttgart Germany;

    State Plant Breeding Institute University of Hohenheim 70599 Stuttgart Germany;

    Limagrain GmbH 31226 Peine-Rosenthal Germany;

    State Plant Breeding Institute University of Hohenheim 70599 Stuttgart Germany;

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